IRCOF, CNRS UMR 6014, and FR 3038, Université de Rouen et INSA de Rouen, 76821 Mont St. Aignan Cedex, France.
J Phys Chem A. 2011 Jun 2;115(21):5505-15. doi: 10.1021/jp2031384. Epub 2011 May 6.
In this article, we assess the ability of various density functionals to predict accurate values for some basic properties of the bond critical points of about 50 small molecules, including the recently proposed reduced gradient variation rates and involving typical ionic and covalent bonds, agostic interactions, and van der Waals complexes. The relation between the computed deviations and the geometric variations are discussed, as well as the topology variations. The possible correlation of these descriptors to atomization energies is considered, and the relevance of an accurate QTAIM analysis for correct descriptions of potential energy surfaces is addressed. Finally, we provide typical margins of error for the evaluation of these quantities and discuss their consequences for computational applications.
在本文中,我们评估了各种密度泛函预测大约 50 个小分子的键临界点的一些基本性质的准确值的能力,包括最近提出的降低梯度变化率,并涉及典型的离子和共价键、螯合相互作用和范德华复合物。讨论了计算偏差与几何变化以及拓扑变化之间的关系。考虑了这些描述符与原子化能之间的可能相关性,并讨论了准确的 QTAIM 分析对正确描述势能面的相关性。最后,我们提供了评估这些量的典型误差范围,并讨论了它们对计算应用的影响。